The Detail Information for This Interaction


  • Detail
  • Binding
  • Network
Detail:
ncRNA Symmbol:miR-489
ncRNA Category:miRNA
Interaction Gene Symbol: AKT3
Death Pathway:apoptosis
Expression Direction of ncRNA:down
Species:Homo sapiens
Tissue:ovaries cell
PMID: 24686007
Detail Description:

MiR-489 overexpression results in an inhibition of SKOV3 and OVCAR3 cell survival and cell growth after CDDP treatment and an induction of cell apoptosis. Inhibition of miR-489 yields the opposite results. In addition, miR-489 overexpression increases the sensitivity of SKOV3/CDDP and OVCAR3/CDDP cells to CDDP and inhibits their colony number. Akt3 is validated as a direct target of miR-489 in SKOV3, OVCAR3, SKOV3/CDDP and OVCAR3/CDDP cells. In addition, miR-489 suppresses Akt3 protein expression by binding sites on its 3'UTR. Knockdown of Akt3 results in a similar effect as that because of miR-489 overexpression; importantly, Akt3 silencing rescues the functions induced by miR-489. 

Select the ncRNA symbol and transcript of gene
Mature of miR-489    Transcript of AKT3    
Visualization:
Select the center nodes: First Node Second Node Both the Nodes
Select the Level of Neighbour: First Neighbour Second Neighbour

The 'First Node' or 'Second Node' option represents the sub-network of interacting entry with the first or second interaction node, the 'Both the Nodes' option represents the sub-network of interacting entry with both of interaction nodes.
The 'First Neighbour' represents the sub-network of direct interacting with the center node, the 'Second Neighbour' represents the sub-network of direct or second step interacting with the center node. Interaction sub-network based on the two nodes of this interaction may help the researchers represents all interacting partners immediately.


The Detail page: representing the detail information for RNA-RNA/RNA-Protein interaction;
The Binding page: representing the predicted binding sites and/or constants.
The Network page: representing the interaction sub-network of interacting RNA/Protein.